Enhanced performance of ZnO microballoon arrays for a triboelectric nanogenerator

被引:40
作者
Deng, Weili [1 ]
Zhang, Binbin [1 ]
Jin, Long [1 ]
Chen, Yueqi [2 ]
Chu, Wenjun [2 ]
Zhang, Haitao [1 ]
Zhu, Minhao [1 ,3 ]
Yang, Weiqing [1 ]
机构
[1] Southwest Jiaotong Univ, Sch Mat Sci & Engn, Minist Educ, Key Lab Adv Technol Mat, Chengdu 610031, Peoples R China
[2] Southwest Jiaotong Univ, Sch Mech Engn, Chengdu 610031, Peoples R China
[3] Southwest Jiaotong Univ, State Key Lab Tract Power, Chengdu 610031, Peoples R China
基金
中国国家自然科学基金;
关键词
ZnO microballoon arrays; triboelectric nanogenerator; PDMS; PTFE; pyramids; WATER-WAVE ENERGY; ACTIVE SENSORS; GENERATOR; ELECTRIFICATION; CONVERSION; SYSTEM; DRIVEN;
D O I
10.1088/1361-6528/aa5f34
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In recent years, triboelectric nanogenerators (TENGs), harvesting energy from the environment as a sustainable power source, have attracted great attention. Currently, many reports focus on the effect of surface modification on the electrical output performance of the TENG. In this work, we have fabricated vertically grown ZnO microballoon (ZnOMB) arrays on top of pyramid-featured PDMS patterned film, contacted with PTFE film to construct the TENG. The electrical output performances of the designed TENG are presented under external forces with different frequencies. The corresponding output open-circuit voltage with ZnOMBs could reach about 57 V the current density about 59 mA m(-2) at 100 Hz, which was about 2.3 times higher than without any ZnO. The global maximum of the instantaneous peak power could reach 1.1Wm(-2) when the external load resistance was about 2M Omega. Furthermore, the electrical output of the fabricated device could light 30 commercial LED bulbs without any rectifier circuits or energy-storage elements. This clearly suggests that this kind of surface modification can dramatically enhance the output performance of the TENG. Moreover, the design of TENG demonstrated here can be applied to various energy harvesting applications.
引用
收藏
页数:7
相关论文
共 44 条
[1]   Dipole-moment-induced effect on contact electrification for triboelectric nanogenerators [J].
Bai, Peng ;
Zhu, Guang ;
Zhou, Yu Sheng ;
Wang, Sihong ;
Ma, Jusheng ;
Zhang, Gong ;
Wang, Zhong Lin .
NANO RESEARCH, 2014, 7 (07) :990-997
[2]   Cylindrical Rotating Triboelectric Nanogenerator [J].
Bai, Peng ;
Zhu, Guang ;
Liu, Ying ;
Chen, Jun ;
Jing, Qingshen ;
Yang, Weiqing ;
Ma, Jusheng ;
Zhang, Gong ;
Wang, Zhong Lin .
ACS NANO, 2013, 7 (07) :6361-6366
[3]  
Chen J., 2016, EURASIP Journal on Information Security, V1, P1, DOI DOI 10.18632/0NC0TARGET.9236
[4]   Automatic Mode Transition Enabled Robust Triboelectric Nanogenerators [J].
Chen, Jun ;
Yang, Jin ;
Guo, Hengyu ;
Li, Zhaoling ;
Zheng, Li ;
Su, Yuanjie ;
Wen, Zhen ;
Fan, Xing ;
Wang, Zhong Lin .
ACS NANO, 2015, 9 (12) :12334-12343
[5]   Networks of Triboelectric Nanogenerators for Harvesting Water Wave Energy: A Potential Approach toward Blue Energy [J].
Chen, Jun ;
Yang, Jin ;
Li, Zhaoling ;
Fan, Xing ;
Zi, Yunlong ;
Jing, Qingshen ;
Guo, Hengyu ;
Wen, Zhen ;
Pradel, Ken C. ;
Niu, Simiao ;
Wang, Zhong Lin .
ACS NANO, 2015, 9 (03) :3324-3331
[6]   Personalized Keystroke Dynamics for Self-Powered Human-Machine Interfacing [J].
Chen, Jun ;
Zhu, Guang ;
Yang, Jin ;
Jing, Qingshen ;
Bai, Peng ;
Yang, Weiqing ;
Qi, Xuewei ;
Su, Yuanjie ;
Wang, Zhong Lin .
ACS NANO, 2015, 9 (01) :105-116
[7]   Harmonic-Resonator-Based Triboelectric Nanogenerator as a Sustainable Power Source and a Self-Powered Active Vibration Sensor [J].
Chen, Jun ;
Zhu, Guang ;
Yang, Weiqing ;
Jing, Qingshen ;
Bai, Peng ;
Yang, Ya ;
Hou, Te-Chien ;
Wang, Zhong Lin .
ADVANCED MATERIALS, 2013, 25 (42) :6094-6099
[8]   Flexible triboelectric generator! [J].
Fan, Feng-Ru ;
Tian, Zhong-Qun ;
Wang, Zhong Lin .
NANO ENERGY, 2012, 1 (02) :328-334
[9]   Transparent Triboelectric Nanogenerators and Self-Powered Pressure Sensors Based on Micropatterned Plastic Films [J].
Fan, Feng-Ru ;
Lin, Long ;
Zhu, Guang ;
Wu, Wenzhuo ;
Zhang, Rui ;
Wang, Zhong Lin .
NANO LETTERS, 2012, 12 (06) :3109-3114
[10]   Ultrathin, Rollable, Paper-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting and Self-Powered Sound Recording [J].
Fan, Xing ;
Chen, Jun ;
Yang, Jin ;
Bai, Peng ;
Li, Zhaoling ;
Wang, Zhong Lin .
ACS NANO, 2015, 9 (04) :4236-4243